论文
1.Wang, P., Ni, H., Liu, H., et al. A novel wellbore strengthening method by using rotary jet while drilling[J]. Journal of Petroleum Science and Engineering, 2020, 194, 107556. (SCI二区TOP)
2.Wang, P., Li, Z., Ni, H., et al. Experimental study of rock breakage of an interrupted pulsed waterjet[J]. Energy Reports, 2020, 6, 713-720. (SCI二区)
3.Wang, P., Ni, H., Wang, R. Modeling the flow of carbon dioxide during the drilling of oil, gas, and geothermal energy[J]. International Journal of Heat and Mass Transfer, 2019, 138, 443-453. (SCI一区TOP)
4.Wang, P., Zhao, B., Ni, H., et al. Research on the modulation mechanism and rock breaking efficiency of a cuttings waterjet[J]. Energy Science & Engineering, 2019, 7, 1687-1704. (SCI三区)
5.Wang, P., Ni, H., Wang, R., et al. Novel mechanical foam breaker based on self-oscillation for promoting the application of foam drilling technology[J]. Chemical Engineering Science, 2018, 188, 121-131. (SCI二区TOP).
6.Wang, P., Ni, H., Wang, R. A novel vibration drilling tool used for reducing friction and improve the penetration rate of petroleum drilling[J]. Journal of Petroleum Science and Engineering, 2018, 165, 436-443. (SCI三区).
7.Wang, P., Ni, H., Wang, R., et al. Modelling the load transfer and tool surface for friction reduction drilling by vibrating drill-string[J]. Journal of Petroleum Science and Engineering, 2018, 164, 333-343. (SCI三区).
8.Wang, P., Ni, H., Wang, R., et al. Research on the characteristics of earthworm-like vibration drilling[J]. Journal of Petroleum Science and Engineering, 2018, 160, 60-71. (SCI三区).
9.Wang, P., Ni, H., Wang, R., et al. Research on the Mechanism of In-Plane Vibration on Friction Reduction[J]. Materials, 2017, 10(1015), 1-21. (SCI二区)
10.Wang, P., Ni, H., Wang, R., et al. Experimental investigation of the effect of in-plane vibrations on friction for different materials[J]. Tribology International, 2016, 99, 237-247. (SCI三区)
11.Wang, P., Ni, H., Wang, R., et al. Modulating downhole cuttings via a pulsed jet for efficient drilling-tool development and field testing[J]. Journal of Natural Gas Science and Engineering, 2015, 27, 1287-1295. (SCI三区)
12.Wang, X., Ni, H., Wang, R., Wang, P., et al. Theoretical Study of Tool-Face Disorientation Mechanisms During Slide Drilling and Correction by Surface-Rotation Pulses[J]. SPE Drilling & Completion, 2018, SPE 191374. (SCI四区)
13.Wang, X., Ni, H., Wang, R., Wang, P., et al. Drag-Reduction and Resonance Problems of a Jointed Drillstring in the Presence of an Axial Excitation Tool[J]. Journal of Energy Resources Technology-TRANSACTIONS OF THE ASME, 2018, 141, 032904. (SCI三区).
14.Liu, W., Ni, H., Wang, P., et al. Investigation on the tribological performance of micro-dimples textured surface combined with longitudinal or transverse vibration under hydrodynamic lubrication[J]. International Journal of Mechanical Sciences, 2020, 174, 105474. (SCI二区)
15.Liu, W., Ni, H., Wang, P., et al. Analytical investigation of the friction reduction performance of longitudinal vibration based on the modified elastoplastic contact model[J]. Tribology International, 2020,146, 106237. (SCI一区)
16.Liu, W., Ni, H., Wang, P., et al. An investigation on the drag reduction performance of bioinspired pipeline surfaces with transverse microgrooves[J]. Beilstein J. Nanotechnol. 2020, 11, 24–40. (SCI三区)
17.Liu, W., Ni, H., Chen, H., Wang, P. Numerical simulation and experimental investigation on tribological performance of micro-dimples textured surface under hydrodynamic lubrication[J]. International Journal of Mechanical Sciences, 2019, 163, 105095. (SCI二区)
18.Liu, S., Ni, H., Wang, X., Wang, P. Numerical study of the compound vertical and horizontal impact cutting with a single PDC cutter[J]. Energy Reports, 2020, 6, 1520-1527. (SCI二区)
19.王鹏, 倪红坚, 王瑞和, 等. 基于微凸体接触的钻柱纵向振动减摩阻[J].中国石油大学学报: 自然科学版, 2015, 39(1), 88-94. (EI收录)
20.王鹏, 倪红坚, 王瑞和, 等. 调制式振动对大斜度井减摩阻影响规律[J]. 中国石油大学学报: 自然科学版, 2014, 38(4), 93-97. (EI收录)